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基于萘酰亚胺-苯并噻唑偶联的酯酶荧光探针的研制及其在奥利司他处理的生物样品中酯酶的定性检测中的应用。

Development of an esterase fluorescent probe based on naphthalimide-benzothiazole conjugation and its applications for qualitative detection of esterase in orlistat-treated biosamples.

机构信息

Institute of Fluorescent Probes for Biological Imaging, School of Chemistry and Chemical Engineering, University of Jinan, Jinan, Shandong, 250022, PR China.

Institute of Fluorescent Probes for Biological Imaging, School of Chemistry and Chemical Engineering, University of Jinan, Jinan, Shandong, 250022, PR China; Guangxi Key Laboratory of Electrochemical Energy Materials, Institute of Optical Materials and Chemical Biology, School of Chemistry and Chemical Engineering, Guangxi University, Nanning, Guangxi, 530004, PR China.

出版信息

Anal Chim Acta. 2022 Jan 15;1190:339248. doi: 10.1016/j.aca.2021.339248. Epub 2021 Nov 3.

Abstract

Esterase is a large hydrolysis family, and widely distributed in many kinds of cells. It is responsible for multiple physiological and pathological functions including metabolism, gene expression. While abnormality of esterase is associated with many pathological activities in obesity, Wolman's disease, and cancer. Thereby, it is essential to design an effective tool for esterase in situ detection in biological systems. Herein, a novel fluorescent probe Y-1 for monitoring esterase in living cells was rationally designed. Probe Y-1 was synthesized by the conjugation between an acetylation of 4-hydroxy naphthalimide and benzothiazole group. Benzothiazole moiety is a typical Excited-state intramolecular proton transfer (ESIPT) controller. Acetate group was selected as the responsive site and ESIPT initiator. As the acetate group could block the ESIPT effect, the probe emits no fluorescence under the excitation of 455 nm. When binding with esterase, Y-1 shows distinct fluorescence with the peak at 560 nm with short time when ESIPT is on. Y-1 displays high sensitivity (LOD is 0.216 × 10 U/mL), fast response (within 5 min), high selectivity and photostability towards esterase. Furthermore, the %RSD (relative standard deviation) of within-day and day-to-day precision was no more than 13.0% and the accuracy ranged from -6.5 to -12.3%. Kinetics performance of Y-1 indicates that esterase has high affinity and hydrolysis to Y-1. For biological applications, our probe is a time-dependent visualizing esterase in living HepG2 and CoLo205 cells within 15 min. After the treatment of orlistat (1 and 5 μM) for inhibiting the activity of esterase, the bright fluorescence has also been detected using our probe. Furthermore, it has been successful in monitoring the esterase in zebrafish, the data were consistent with cellular phenomena. Therefore, all these findings indicate that the robust probe Y-1 is a useful qualitative tool for detecting esterase in biological systems.

摘要

酯酶是一个大型水解酶家族,广泛分布于多种细胞中。它负责多种生理和病理功能,包括代谢、基因表达。而酯酶的异常与肥胖、沃尔曼病和癌症等多种病理活动有关。因此,设计一种有效的工具来在生物系统中进行酯酶的原位检测是非常重要的。在这里,我们合理设计了一种用于监测活细胞中酯酶的新型荧光探针 Y-1。探针 Y-1 通过将 4-羟基萘酰亚胺和苯并噻唑基团的乙酰化连接而合成。苯并噻唑部分是一种典型的激发态分子内质子转移(ESIPT)控制器。乙酰基被选为响应基团和 ESIPT 引发剂。由于乙酰基可以阻断 ESIPT 效应,探针在 455nm 激发下不发射荧光。当与酯酶结合时,Y-1 显示出明显的荧光,峰位于 560nm,ESIPT 时间短。Y-1 对酯酶具有高灵敏度(LOD 为 0.216×10U/mL)、快速响应(在 5min 内)、高选择性和光稳定性。此外,日内和日间精密度的 %RSD(相对标准偏差)不超过 13.0%,准确性范围为-6.5 至-12.3%。Y-1 的动力学性能表明,酯酶对 Y-1 具有高亲和力和水解作用。在生物应用中,我们的探针可以在 15 分钟内在活 HepG2 和 CoLo205 细胞中进行时间依赖性可视化酯酶。在用奥利司他(1 和 5μM)处理以抑制酯酶活性后,也可以使用我们的探针检测到明亮的荧光。此外,它还成功地在斑马鱼中监测了酯酶,数据与细胞现象一致。因此,所有这些发现表明,强大的探针 Y-1 是一种用于在生物系统中检测酯酶的有用定性工具。

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